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The 'PUCE CAFE' Project: the First 15K Coffee Microarray, a New Tool for Discovering Candidate Genes correlated to Agronomic and Quality Traits

BACKGROUND: Understanding the genetic elements that contribute to key aspects of coffee biology will have an impact on future agronomical improvements for this economically important tree. During the past years, EST collections were generated in Coffee, opening the possibility to create new tools fo...

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Autores principales: Privat, Isabelle, Bardil, Amélie, Gomez, Aureliano Bombarely, Severac, Dany, Dantec, Christelle, Fuentes, Ivanna, Mueller, Lukas, Joët, Thierry, Pot, David, Foucrier, Séverine, Dussert, Stéphane, Leroy, Thierry, Journot, Laurent, de Kochko, Alexandre, Campa, Claudine, Combes, Marie-Christine, Lashermes, Philippe, Bertrand, Benoit
Formato: Texto
Lenguaje:English
Publicado: BioMed Central 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3025959/
https://www.ncbi.nlm.nih.gov/pubmed/21208403
http://dx.doi.org/10.1186/1471-2164-12-5
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author Privat, Isabelle
Bardil, Amélie
Gomez, Aureliano Bombarely
Severac, Dany
Dantec, Christelle
Fuentes, Ivanna
Mueller, Lukas
Joët, Thierry
Pot, David
Foucrier, Séverine
Dussert, Stéphane
Leroy, Thierry
Journot, Laurent
de Kochko, Alexandre
Campa, Claudine
Combes, Marie-Christine
Lashermes, Philippe
Bertrand, Benoit
author_facet Privat, Isabelle
Bardil, Amélie
Gomez, Aureliano Bombarely
Severac, Dany
Dantec, Christelle
Fuentes, Ivanna
Mueller, Lukas
Joët, Thierry
Pot, David
Foucrier, Séverine
Dussert, Stéphane
Leroy, Thierry
Journot, Laurent
de Kochko, Alexandre
Campa, Claudine
Combes, Marie-Christine
Lashermes, Philippe
Bertrand, Benoit
author_sort Privat, Isabelle
collection PubMed
description BACKGROUND: Understanding the genetic elements that contribute to key aspects of coffee biology will have an impact on future agronomical improvements for this economically important tree. During the past years, EST collections were generated in Coffee, opening the possibility to create new tools for functional genomics. RESULTS: The "PUCE CAFE" Project, organized by the scientific consortium NESTLE/IRD/CIRAD, has developed an oligo-based microarray using 15,721 unigenes derived from published coffee EST sequences mostly obtained from different stages of fruit development and leaves in Coffea Canephora (Robusta). Hybridizations for two independent experiments served to compare global gene expression profiles in three types of tissue matter (mature beans, leaves and flowers) in C. canephora as well as in the leaves of three different coffee species (C. canephora, C. eugenoides and C. arabica). Microarray construction, statistical analyses and validation by Q-PCR analysis are presented in this study. CONCLUSION: We have generated the first 15 K coffee array during this PUCE CAFE project, granted by Génoplante (the French consortium for plant genomics). This new tool will help study functional genomics in a wide range of experiments on various plant tissues, such as analyzing bean maturation or resistance to pathogens or drought. Furthermore, the use of this array has proven to be valid in different coffee species (diploid or tetraploid), drastically enlarging its impact for high-throughput gene expression in the community of coffee research.
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spelling pubmed-30259592011-01-28 The 'PUCE CAFE' Project: the First 15K Coffee Microarray, a New Tool for Discovering Candidate Genes correlated to Agronomic and Quality Traits Privat, Isabelle Bardil, Amélie Gomez, Aureliano Bombarely Severac, Dany Dantec, Christelle Fuentes, Ivanna Mueller, Lukas Joët, Thierry Pot, David Foucrier, Séverine Dussert, Stéphane Leroy, Thierry Journot, Laurent de Kochko, Alexandre Campa, Claudine Combes, Marie-Christine Lashermes, Philippe Bertrand, Benoit BMC Genomics Methodology Article BACKGROUND: Understanding the genetic elements that contribute to key aspects of coffee biology will have an impact on future agronomical improvements for this economically important tree. During the past years, EST collections were generated in Coffee, opening the possibility to create new tools for functional genomics. RESULTS: The "PUCE CAFE" Project, organized by the scientific consortium NESTLE/IRD/CIRAD, has developed an oligo-based microarray using 15,721 unigenes derived from published coffee EST sequences mostly obtained from different stages of fruit development and leaves in Coffea Canephora (Robusta). Hybridizations for two independent experiments served to compare global gene expression profiles in three types of tissue matter (mature beans, leaves and flowers) in C. canephora as well as in the leaves of three different coffee species (C. canephora, C. eugenoides and C. arabica). Microarray construction, statistical analyses and validation by Q-PCR analysis are presented in this study. CONCLUSION: We have generated the first 15 K coffee array during this PUCE CAFE project, granted by Génoplante (the French consortium for plant genomics). This new tool will help study functional genomics in a wide range of experiments on various plant tissues, such as analyzing bean maturation or resistance to pathogens or drought. Furthermore, the use of this array has proven to be valid in different coffee species (diploid or tetraploid), drastically enlarging its impact for high-throughput gene expression in the community of coffee research. BioMed Central 2011-01-05 /pmc/articles/PMC3025959/ /pubmed/21208403 http://dx.doi.org/10.1186/1471-2164-12-5 Text en Copyright ©2011 Privat et al; licensee BioMed Central Ltd. This is an Open Access article distributed under the terms of the Creative Commons Attribution License (<url>http://creativecommons.org/licenses/by/2.0</url>), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Methodology Article
Privat, Isabelle
Bardil, Amélie
Gomez, Aureliano Bombarely
Severac, Dany
Dantec, Christelle
Fuentes, Ivanna
Mueller, Lukas
Joët, Thierry
Pot, David
Foucrier, Séverine
Dussert, Stéphane
Leroy, Thierry
Journot, Laurent
de Kochko, Alexandre
Campa, Claudine
Combes, Marie-Christine
Lashermes, Philippe
Bertrand, Benoit
The 'PUCE CAFE' Project: the First 15K Coffee Microarray, a New Tool for Discovering Candidate Genes correlated to Agronomic and Quality Traits
title The 'PUCE CAFE' Project: the First 15K Coffee Microarray, a New Tool for Discovering Candidate Genes correlated to Agronomic and Quality Traits
title_full The 'PUCE CAFE' Project: the First 15K Coffee Microarray, a New Tool for Discovering Candidate Genes correlated to Agronomic and Quality Traits
title_fullStr The 'PUCE CAFE' Project: the First 15K Coffee Microarray, a New Tool for Discovering Candidate Genes correlated to Agronomic and Quality Traits
title_full_unstemmed The 'PUCE CAFE' Project: the First 15K Coffee Microarray, a New Tool for Discovering Candidate Genes correlated to Agronomic and Quality Traits
title_short The 'PUCE CAFE' Project: the First 15K Coffee Microarray, a New Tool for Discovering Candidate Genes correlated to Agronomic and Quality Traits
title_sort 'puce cafe' project: the first 15k coffee microarray, a new tool for discovering candidate genes correlated to agronomic and quality traits
topic Methodology Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3025959/
https://www.ncbi.nlm.nih.gov/pubmed/21208403
http://dx.doi.org/10.1186/1471-2164-12-5
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